EP2602199B1 - Procédé et dispositif pour poser des manchons des films étirables sur des emballages - Google Patents

Procédé et dispositif pour poser des manchons des films étirables sur des emballages Download PDF

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Publication number
EP2602199B1
EP2602199B1 EP20120190169 EP12190169A EP2602199B1 EP 2602199 B1 EP2602199 B1 EP 2602199B1 EP 20120190169 EP20120190169 EP 20120190169 EP 12190169 A EP12190169 A EP 12190169A EP 2602199 B1 EP2602199 B1 EP 2602199B1
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EP
European Patent Office
Prior art keywords
spreading
label
label sleeves
segments
sleeves
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP20120190169
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German (de)
English (en)
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EP2602199A1 (fr
Inventor
Günter Frankenberger
Stefan Scherl
Martin Langosch
Christian Holzer
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Krones AG
Original Assignee
Krones AG
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Publication date
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Publication of EP2602199A1 publication Critical patent/EP2602199A1/fr
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Publication of EP2602199B1 publication Critical patent/EP2602199B1/fr
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65CLABELLING OR TAGGING MACHINES, APPARATUS, OR PROCESSES
    • B65C3/00Labelling other than flat surfaces
    • B65C3/06Affixing labels to short rigid containers
    • B65C3/065Affixing labels to short rigid containers by placing tubular labels around the container

Definitions

  • the invention relates to a device and a method for labeling containers with in particular elastic label sleeves.
  • Containers such as beverage bottles, can be labeled, inter alia, by putting elastic film sleeves over the container jacket surface.
  • the container After moving the spreader fingers, the container can be pulled out of the spreading fingers from above by a gripping device with the label attached.
  • the transfer of the labels from the spreading fingers to the container is facilitated by the fact that a compressed air cushion between the spreading fingers and the label sleeves is generated during the stripping of the label sleeve of the spreading fingers.
  • the following problems may occur, in particular when labeling containers with non-rotationally symmetrical cross sections.
  • the material of the label sleeves is so much strained during expansion in the spreader unit that the label or provided on the label sleeve imprint is damaged. This is the case, for example, when label sleeves for square bottles are expanded rotationally symmetrically.
  • the label sleeve must then be stretched at least so far that the square bottle fits into the circular open spreader unit.
  • the labels are not affixed with sufficient reliability in the correct rotational position on the containers.
  • the label sleeves for example, when jumping against the spreader units jump back and twist.
  • the device for labeling containers according to claim 1.
  • the device comprises
  • non-rotationally symmetrical, in particular axisymmetric motion sequences of the expansion segments can be realized.
  • temporal processes and / or characteristic positions during spreading to the cross section of the male label sleeves and / or the cross section of the container to be labeled can be adapted.
  • a group-wise control simplifies in particular the generation of axisymmetric motion sequences.
  • Spreading movements according to the invention differ for example with respect to the radial end position of the movement, the radial positioning speed, the acceleration ramps and / or braking ramps, starting time and / or stopping time of the movement and the like.
  • the simultaneous or temporally overlapping expansion movements relate to the common approach of the expansion segments of a predetermined position of the spreading unit.
  • the device is particularly suitable for elastic label sleeves, so-called stretch sleeves.
  • shrink labels with the device according to the invention can also be applied to square bottles or other non-rotationally symmetrical cross-sections in a particularly gentle manner.
  • rotationally symmetrical containers with elastic or shrink-on label sleeves can be labeled particularly accurately in a predetermined rotational position by the rotational position of the label sleeves is stabilized by guiding the same along the label sleeves provided folding edges.
  • the expansion segments are mounted around a central recess for receiving the container and radially displaceable. Furthermore, the expansion segments can be moved into at least one non-rotationally symmetrical position relative to the central recess. As a result, the expansion segments can be moved by moving both into a first, suitable for donating the label sleeves position and in a second, suitable for the label transfer position.
  • Non-rotationally symmetrical positions according to the invention are, for example, dispensing positions for receiving the donated label sleeves, expansion positions for inserting the container into the label sleeves and labeling positions for transferring the label sleeves to the containers.
  • the expansion segments can be moved into a non-rotationally symmetrical expansion position for stretching the label sleeves, which is aligned with a desired rotational position of the container to be labeled.
  • a desired rotational position of the container to be labeled it is possible to reduce the stretching of the label sleeves necessary for the labeling in the case of non-rotationally symmetrical container cross sections.
  • the expansion segments can be moved in a non-rotationally symmetrical dispensing position for receiving and aligning the label sleeves, which with a Target rotational position of the label sleeve is aligned during dispensing.
  • the predetermined rotational position of the label sleeves during labeling can be maintained more accurately.
  • the non-rotationally symmetrical dispensing position is aligned with respect to folded edges formed on the label sleeves such that the clear width, or in other words, the distance between opposing expansion segments is greatest in the region of the fold edges.
  • the dispensing position is axisymmetric with respect to an imaginary connecting line between the folded edges. In this way, the rotational position of the label sleeves can be adjusted particularly easily and / or avoid twisting of the label sleeve on the spreader units.
  • the control device comprises cams provided on the spreader units with at least two different control cams in order to move the spreader segments away from one another at different radial distances when the cam disk rotates.
  • cams are, for example, differently curved control grooves, engage in the provided on the expansion segments control cam.
  • individually controllable actuators in particular electric motors
  • Conceivable are also other individually controllable drives, such as pneumatic drives.
  • the movements can be easily adapted by programming to different production conditions and / or container types and / or label types.
  • sliding aids for the label sleeves are provided on the expansion segments in the circumferential direction. This can reduce uneven tension and elongation of the label sleeves.
  • the stated object is further achieved with a method for labeling containers according to claim 8.
  • This is particularly suitable for elastic label sleeves, for example consisting of the base material LDPE.
  • the label sleeves are shot on spreader units with spreading segments and spread the label sleeves for the subsequent labeling by radially apart of the expansion segments about a central recess for the container.
  • the expansion segments in particular in groups, simultaneously or temporally overlapping with different spreading movements urged to move the expansion segments in a non-rotationally symmetric position.
  • the spreading movements are adapted to the cross section of the container and / or the desired rotational position of the container during labeling.
  • the label sleeves are spread in polygonal container cross-sections to an approximately corresponding polygonal cross-section.
  • the expansion segments are moved to a non-rotationally symmetrical expansion position for stretching the label sleeves, which is adapted to the cross section of the container such that the distance between the expansion segments and the container is at most 10 mm, in particular at most 5 mm.
  • the label sleeve can be particularly gently and accurately apply.
  • the label sleeve can be stretched uniformly to the desired cross-section, so that distortions and / or damage during the subsequent transfer of the label sleeve to the container are minimized.
  • the spreading movements for dispensing the label sleeves are adapted to the rotational position of the label sleeves. Since the label sleeves are usually not rotationally symmetrical during dispensing, that is with a circular cross-section, and have folding edges, the rotational position during dispensing can be stabilized by non-rotationally symmetrical moving apart of the expansion segments and a jumping back and twisting of the label sleeves can be avoided by the spreader units.
  • the spreading movements are adapted such that at least two expansion segments guide the label sleeves along the label sleeves provided folding edges. This allows a particularly precise alignment and / or stabilization of the rotational position.
  • the expansion segments are moved apart at different speeds and / or with a time offset.
  • complex sequences of movements can be combined for donating and stretching the label sleeves.
  • a local overstretching of the label sleeves can be counteracted.
  • the containers have a non-rotationally symmetrical cross-section.
  • Particularly suitable are polygonal cross sections with rounded corners, elliptical cross sections and combinations thereof.
  • Fig. 1 and 2 can recognize, comprises a preferred embodiment of the labeling device 1 according to the invention for attaching elastic label sleeves 2 to containers 3, such as plastic bottles, a Etikettierrad 4, at the circumferentially evenly distributed labeling stations 5 are provided.
  • These comprise spreader units 6 for receiving and spreading the label sleeves 2, positioning units 7 for receiving and lifting the containers 3 to be labeled into the spreader units 6, and removal units 8 for gripping a mouth-side portion of the containers 3 and for pulling the containers 3 out of the spreader units 6 ,
  • FIG. 1 Furthermore, a control unit 9 are shown, a stationary label dispenser 10, an inlet starwheel 11 for feeding the container 3 to be labeled, and an outlet starwheel 12 for removing the labeled containers 3 Fig. 1 of the Etikettierrad 4 hidden positioning 7 are in the Fig. 2 shown schematically in cross section.
  • the basic mode of operation of the labeling device 1 according to the invention is shown in FIG Fig. 2 illustrated by way of example along the transport direction 4 a circumferential labeling station 5 at the positions I to IX.
  • the circulating labeling station 5 is located at the position I in the region of the stationary label dispenser 10.
  • a plurality of movable expansion segments 6a are arranged around a central recess 6b on the spreader unit 6.
  • the label sleeves 2 are separated in a known manner from an initially flat-folded and pulled over a mandrel film tube 2a and shot by means of schematically indicated transport rollers 10a from above over the passing spreading segments 6a.
  • the label sleeve 2 is positioned around the expansion segments 6a, these having moved apart into a preferably asymmetrical dispensing position R2 to stabilize the label sleeve 2 in a desired dispensing position 13 and also to return the label sleeve 2 from the spreader unit 6 avoid.
  • the desired dispensing position 13 of the label sleeve 2 is essentially predetermined by the orientation of the film tube 2a in the label dispenser 10 and characterized by the position of the folded edges 2b of the film tube 2a. The folded edges 2b remain visible in the unstretched state of the label sleeve 2 and cause a stretched in the direction of the folding edges 2b cross section of the label sleeve 2, as shown in Fig. 5 becomes clear.
  • a container 3 to be labeled is also set down from the infeed star wheel 11 onto the positioning unit 7.
  • the spreading unit 6 is shown during spreading of the label sleeve 2 in an intermediate position in which all expansion segments 6a abut against the label sleeve 2. This can be sucked in the sequence of the expansion segments 6a to stabilize the position of the label sleeve 2 on the spreader unit 6 during further spreading and stretching.
  • the container 3 is also laterally enclosed by pivotable guide shells 7a in the region of the positioning unit 7 in order to take over the container 3 from the inlet starwheel 11 to the positioning unit 7.
  • the labeling station 5 has left the region of the inlet starwheel 11. Furthermore, the expansion segments 6a are shown in an outer expansion position R3, in which the label sleeve 2 is expanded to such an extent that the container 3 to be labeled can be raised by the positioning unit 7 through the central recess 6b into the expansion unit 6.
  • the lifting movement 7a of the positioning unit 7 is indicated schematically at the position V, reaching an upper end position for subsequent label transfer at the position IV.
  • the spreading unit 6 is in a labeling position R4, in which the expansion segments 6a are driven to the subsequent transfer of the label sleeve 2 to the container 3 zoom.
  • a clip 8a provided on the take-out unit 8 engages the mouth-side portion of the container 3, so that the container 3 subsequently by means of the removal unit 8 can be raised.
  • the associated lifting movement is indicated at the position VII by an arrow.
  • a positive pressure is applied to the expansion segments 6a in a known manner in order to facilitate the label transfer by means of a compressed air cushion between the expansion segments 6a and the label sleeve 2.
  • 8 additional jaws or the like could be provided on the removal unit to support the frictional engagement between the label sleeve 2 and the container 3 and / or manufacture.
  • the position VIII shows the labeled after pulling out of the spreading unit 6 and the transfer to the outlet star 12th
  • this further comprises a drive motor 6c, a gear 6d and a control disk 6e with control grooves 6f in order to transmit a drive torque from the drive motor 6c to the expansion segments 6a.
  • the drive motor 6c is electrically actuated by the control unit 9. This can also be designed to monitor the drive torque of the drive motor 6c in order to monitor the sequence of the labeling.
  • the control disk 6e serves for the common control of the expansion segments 6a.
  • the control grooves 6f are designed such that the expansion segments 6a are moved away from the central recess 6b at a different distance as the control disk rotates.
  • curved control grooves 6f are provided with different curves, in which the expansion segments 6a are each guided by means of control cams.
  • the expansion segments 6a are in this case preferably mounted so as to be radially movable, so that the rotation of the control disk 6e along the different control grooves 6f simultaneously produce different radial movement patterns of the associated expansion segments 6a.
  • control device 9 is then designed according to the coordinated control of the individual drive motors. With the aid of individually controllable drive motors for individual expansion segments 6a, particularly complex temporal movement sequences of the expansion segments 6a can be realized and / or flexibly adapted by programming the control unit 9.
  • the Fig. 3 also shows the outside of the expansion segments 6a open air ducts 6g, which are connected via pressure lines with electrically controllable valves, so that, as needed Compressed air or vacuum can be applied to the expansion segments 6a.
  • Compressed air or vacuum can be applied to the expansion segments 6a.
  • the vacuum is used to suck the label sleeves 2 during insertion of the container 3 in the spreader units 6 in order to stabilize the label position as needed until the beginning of the transfer to the container 3.
  • FIG. 4 a partial view of the expansion unit 6 according to the invention in the inner basic position R1 from above.
  • eight expansion segments 6a are provided which abut one another in the basic position R1.
  • it would be a different number of Sp Schwarzsegmente 6a conceivable, as is a distance between the Sp Schwarzsegmenten 6a in its basic position R1.
  • FIG. 5 shows the spreading unit 6 in the dispensing position R2, in which the radial position of the expansion segments 6a with respect to the central axis 6b 'is preferably not rotationally symmetrical.
  • a first group G1 of the expansion segments 6a in the region of the folded edges 2b of the label sleeve 2 is moved further away from the central axis 6b 'than the expansion segments 6a of the groups G2 and G3 lying between the folded edges 2b.
  • the label sleeve 2 can be guided in the region of the fold edges 2b along the respectively adjacent expansion segments 6a and stabilize the label sleeve 2 in the schematically indicated desired dispensing position 13.
  • the expansion segments 6a could be subdivided into any groups with different movement sequences, depending on their total number and depending on the shape of the folded edges 2b, provided that the label sleeves 2 can be stabilized in the desired dispensing position 13.
  • the distance 14 between opposing expansion elements 6a (or the distance between the expansion elements 6a of the central axis 6b ') in the region of the folded edges 2b is greater than between the other expansion elements 6a.
  • the non-rotationally symmetrical dispensing position R2 in particular with respect to the folding edge 2b axisymmetric dispensing position R2, serves for correct alignment of the label sleeve 2 before the subsequent stretching of the label sleeve 2 in the stretched position R3 and the labeling position R4.
  • the label sleeve 2 is preferably aligned not only in the desired dispensing position 13 but also in a coaxial position relative to the spreading segments 6a and / or in the lower stop against the spreader unit 6.
  • sliding aids 6h can be provided on the expansion segments 6a. These could be, for example, smooth. Suitable are plastics such as PTFE or polished metal surfaces and the like. Also conceivable would be ribbed surfaces. For example, a horizontal corrugation could promote a sliding of the label sleeve 2 in the circumferential direction to adjust their rotational position and at the same time counteract slippage of the label sleeve 2 in the vertical direction.
  • FIG. 6 shows the spreader unit 6 in the labeling position R4, in which the radial position of the expansion segments 6a with respect to the central axis 6b 'of the central recess 6b is preferably not rotationally symmetrical.
  • a first group G1 'of the expansion segments 6a is moved further away from the central axis 6b' than a second group G2 '.
  • the cross section of the label sleeve 2 stretched by the expansion segments 6a can be adapted to the cross section 3a of the container 3 to be labeled.
  • the label sleeve 2 is spread, for example, in a rectangular container cross-section 3a to an approximately rectangular cross-section, in an oval container cross-section to an approximately oval cross-section and the like.
  • a predetermined distance 15 between the spanned label sleeve 2 and the container 3 in the labeling position R4 and / or in the expansion position R3 is not exceeded. This allows a uniform circumferential expansion of the label sleeve 2 in the transfer to the container 3.
  • the distance 15 is preferably not more than 10 mm, in particular at most 5 mm.
  • the label sleeve 2 can be aligned in a (schematically indicated) Soll-Etikettierfrontlage 16. As described above for the dispensing rotational position 13, the alignment of the rotational position can be assisted by the sliding aids 6h.
  • the container 3 can be forced by means of the non-rotationally symmetrically arranged expansion segments 6a in the labeling position R4 in a correct nominal Etikettierwindlage 16 ', which ideally coincides with the desired Etikettiertaxlage 16 of the label sleeve 2. This may be advantageous after an inadvertent rotation of the container 3 during transport and / or lifting into the expansion unit 6.
  • the expansion segments 6a in the outer expansion position R3 of the expansion unit 6 may be arranged non-rotationally symmetrical with respect to the central recess 6b (not shown).
  • the container 3 can not only introduce collision-free into the label sleeve 2 but also avoid local overstretching of the label sleeve 2.
  • the expansion segments 6a can be moved apart in groups or individually at different speeds and / or with a time offset. This can counteract uneven stretching of the label sleeve 2 to the non-rotationally symmetrical outer expansion position R3 and / or the labeling position R4. In addition, this favors a circumferential slippage of the label sleeve in uneven stretching with the result of a desirable circumferential tension compensation in the label sleeve 2. This protects in particular imprints on the label sleeves 2 in spite of progressive stretching of the label sleeves. 2

Claims (14)

  1. Dispositif pour étiqueter des récipients ou contenants (3) à l'aide de manchons d'étiquette (2) notamment élastiques, comprenant des unités d'évasement (6) avec des segments d'évasement (6a), qui peuvent être écartés à partir d'une position intérieure (R1) destinée à la réception des manchons d'étiquette, vers une position extérieure (R3, R4) pour évaser les manchons d'étiquette en vue de l'étiquetage qui suit,
    et comprenant un système de commande (9) à l'aide duquel les segments d'évasement peuvent être soumis, notamment par groupes (G1-G3, G1', G2'), simultanément ou de manière à se chevaucher dans le temps, à des mouvements d'évasement différents, les segments d'évasement (6a) étant montés de manière radialement coulissante autour d'un évidement central (6b) destiné à accueillir le contenant (3), et les segments d'évasement pouvant être déplacés dans au moins une position (R2, R3, R4) non symétrique en rotation par rapport à l'évidement central.
  2. Dispositif selon la revendication 1, dans lequel les segments d'évasement (6a) peuvent être déplacés dans une position d'expansion (R3, R4) non symétrique en rotation, pour assurer l'expansion des manchons d'étiquette, et qui est d'une orientation correspondant à une position de rotation de consigne (16') du contenant (3) à étiqueter.
  3. Dispositif selon la revendication 1 ou la revendication 2, dans lequel les segments d'évasement (6a) peuvent être déplacés dans une position de distribution (R2) non symétrique en rotation, pour accueillir et orienter les manchons d'étiquette (2), et qui est d'une orientation correspondant à une position de rotation de consigne (13) des manchons d'étiquette lors de leur distribution.
  4. Dispositif selon la revendication 3, dans lequel la position de distribution (R1) non symétrique en rotation est orientée, par rapport à des plis (2b) formés sur les manchons d'étiquette, de manière telle que la distance entre des segments d'évasement (6a) mutuellement opposés soit la plus grande dans la zone des plis.
  5. Dispositif selon l'une au moins des revendications précédentes, dans lequel le dispositif de commande (9) comprend des disques de came (6e) prévus sur les unités d'évasement (6), avec au moins deux cames de commande (6f) différentes, pour écarter les segments d'évasement (6a), lors de la rotation des disques de came, à des distances radiales différentes.
  6. Dispositif selon l'une au moins des revendications 1 à 4, dans lequel, pour les segments d'évasement (6a), sont prévus des entrainements de déplacement pouvant être commandés individuellement, notamment des moteurs électriques.
  7. Dispositif selon l'une au moins des revendications précédentes, dans lequel, sur les segments d'évasement (6a), sont prévus des aides au glissement (6h) pour les manchons d'étiquette (2), qui agissent dans la direction périphérique.
  8. Procédé pour étiqueter des récipients ou contenants (3) à l'aide de manchons d'étiquette (2) notamment élastiques, d'après lequel les manchons d'étiquette sont envoyés sur des unités d'évasement (6) comportant des segments d'évasement (6a), et d'après lequel les manchons d'étiquette sont évasés pour l'étiquetage qui suit, par écartement radial des segments d'évasement (6a) autour d'un évidement central (6b) destiné à accueillir le contenant (3),
    les segments d'évasement (6a) étant soumis, notamment par groupes (G1-G3, G1', G2'), simultanément ou de manière à se chevaucher dans le temps, à des mouvements d'évasement différents, de manière à ce que les segments d'évasement (6a) soient déplacés dans au moins une position (R2, R3, R4) non symétrique en rotation par rapport à l'évidement central.
  9. Procédé selon la revendication 8, d'après lequel les mouvements d'évasement sont adaptés à la section transversale des contenants (3) et/ou la position de rotation de consigne (16') des contenants lors de l'étiquetage.
  10. Procédé selon la revendication 8 ou la revendication 9, d'après lequel les segments d'évasement (6a) sont déplacés dans une position d'expansion (R2, R3) non symétrique en rotation, pour assurer l'expansion des manchons d'étiquette (2), qui est adaptée à la section transversale (3a) du contenant (3) de manière telle que la distance (15) entre les segments d'évasement et le contenant soit égale au plus à 10 mm, notamment au plus à 5 mm.
  11. Procédé selon l'une au moins des revendications 8 à 10, d'après lequel les mouvements d'évasement pour la distribution des manchons d'étiquette (2) sont adaptés à la position de rotation (13) des manchons d'étiquette.
  12. Procédé selon la revendication 11, d'après lequel les mouvements d'évasement sont adaptés de manière telle qu'au moins deux segments d'évasement (6a) guident les manchons d'étiquette (2) le long de plis (2b) prévus sur les manchons d'étiquette.
  13. Procédé selon l'une au moins des revendications 8 à 12, d'après lequel les segments d'évasement (6a) sont écartés avec une rapidité différente et/ou de manière décalée dans le temps.
  14. Procédé selon l'une au moins des revendications 8 à 13, d'après lequel les contenants (3) présentent une section transversale (3a) non symétrique en rotation.
EP20120190169 2011-12-05 2012-10-26 Procédé et dispositif pour poser des manchons des films étirables sur des emballages Active EP2602199B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102011087729A DE102011087729A1 (de) 2011-12-05 2011-12-05 Vorrichtung und Verfahren zum Etikettieren von Behältern mit elastischen Etikettenhülsen

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EP2602199A1 EP2602199A1 (fr) 2013-06-12
EP2602199B1 true EP2602199B1 (fr) 2015-04-22

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CN113870658B (zh) * 2021-10-20 2023-08-11 钟妙红 一种幼儿园使用的二十四节气认知教学设备及其使用方法

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EP2476620A1 (fr) * 2011-01-17 2012-07-18 Krones AG Dispositif et procédé d'application de manchons élastiques sur des récipients

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NL9401561A (nl) * 1994-09-26 1996-05-01 Terpo Holding Bv Elastiekketen, werkwijze en inrichting voor het vervaardigen van een elastiekketen, en werkwijze en inrichting voor het aan een behandelinrichting toevoeren van uit de elastiekketen afkomstige elastieken.
WO1996040559A2 (fr) * 1995-06-07 1996-12-19 B & H Manufacturing Co., Inc. Machine d'etiquetage geree par ordinateur
JP4306867B2 (ja) * 1999-04-06 2009-08-05 株式会社フジシールインターナショナル ラベル装着装置
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WO2000066437A1 (fr) * 1999-04-30 2000-11-09 Krones Ag Procede et dispositif pour appliquer des etiquettes-manchons sur des objets
ITBO20040253A1 (it) * 2004-04-23 2004-07-23 Aetna Group Spa Macchina per il confezionamento di gruppi di prodotti mediante spezzoni tubolari di film elastico
EP2102066B1 (fr) * 2006-12-15 2015-11-18 CCL Label Gmbh Applicateur d'étiquette pour manchon de film étirable
DE102008055562A1 (de) * 2008-12-19 2010-06-24 Krones Ag Spannvorrichtung und Verwendung einer Spannvorrichtung zum Etikettieren von Gegenständen, Verfahren zum Etikettieren von Gegenständen
EP2316738A3 (fr) * 2009-11-02 2011-08-31 Leo Bühler Poser de manchons de film étirable sur des emballages
DE102009047463A1 (de) * 2009-12-03 2011-06-09 Krones Ag Vorrichtung und Verfahren zum Aufbringen einer Etikettenhülse

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Publication number Priority date Publication date Assignee Title
US3974628A (en) * 1975-11-11 1976-08-17 Anatole Ethan Konstantin Banding machine
EP2476620A1 (fr) * 2011-01-17 2012-07-18 Krones AG Dispositif et procédé d'application de manchons élastiques sur des récipients

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DE102011087729A1 (de) 2013-06-06
CN103129789A (zh) 2013-06-05
EP2602199A1 (fr) 2013-06-12
CN103129789B (zh) 2015-09-16

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